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首页> 外文期刊>Communications in Numerical Methods in Engineering >Fast left ventricle tracking using localized anatomical affine optical flow
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Fast left ventricle tracking using localized anatomical affine optical flow

机译:使用局部解剖仿射光流快速跟踪左心室

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In daily clinical cardiology practice, left ventricle (LV) global and regional function assessment is crucial for disease diagnosis, therapy selection, and patient follow-up. Currently, this is still a time-consuming task, spending valuable human resources. In this work, a novel fast methodology for automatic LV tracking is proposed based on localized anatomically constrained affine optical flow. This novel method can be combined to previously proposed segmentation frameworks or manually delineated surfaces at an initial frame to obtain fully delineated datasets and, thus, assess both global and regional myocardial function. Its feasibility and accuracy were investigated in 3 distinct public databases, namely in realistically simulated 3D ultrasound, clinical 3D echocardiography, and clinical cine cardiac magnetic resonance images. The method showed accurate tracking results in all databases, proving its applicability and accuracy for myocardial function assessment. Moreover, when combined to previous state-of-the-art segmentation frameworks, it outperformed previous tracking strategies in both 3D ultrasound and cardiac magnetic resonance data, automatically computing relevant cardiac indices with smaller biases and narrower limits of agreement compared to reference indices. Simultaneously, the proposed localized tracking method showed to be suitable for online processing, even for 3D motion assessment. Importantly, although here evaluated for LV tracking only, this novel methodology is applicable for tracking of other target structures with minimal adaptations.
机译:在日常临床心脏病学实践中,左心室(LV)整体和区域功能评估对于疾病诊断,治疗选择和患者随访至关重要。当前,这仍然是一项耗时的工作,花费了宝贵的人力资源。在这项工作中,基于局部解剖学约束的仿射光流,提出了一种新颖的快速LV自动跟踪方法。可以将这种新颖的方法与先前提出的分割框架相结合,或者在初始帧处手动描绘表面,以获得完全描绘的数据集,从而评估整体和局部心肌功能。在3个不同的公共数据库中对它的可行性和准确性进行了研究,即在逼真的模拟3D超声,临床3D超声心动图和临床电影心脏磁共振图像中。该方法在所有数据库中均显示了准确的跟踪结果,证明了其在心肌功能评估中的适用性和准确性。此外,当与先前的最新分割框架结合使用时,它在3D超声和心脏磁共振数据中均优于先前的跟踪策略,与参考指数相比,能够以较小的偏差和较窄的一致性自动计算相关的心脏指数。同时,所提出的本地化跟踪方法甚至适用于在线处理,甚至适用于3D运动评估。重要的是,尽管此处仅对LV跟踪进行了评估,但这种新颖的方法适用于以最小的适应性跟踪其他目标结构。

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